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Contributions in renewable energy systems: A perspective from the latest publications of FCSE |
Xiaowen Zhu1, Di Xu2( ), Jing-Kang Wang1 |
1. School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China 2. College of Chemistry and Chemical Engineering, Chongqing University of Science & Technology, Chongqing 401331, China |
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Corresponding Author(s):
Di Xu
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Online First Date: 22 November 2019
Issue Date: 04 December 2019
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Center of Strategic Studies, Chinese Academy of Engineering. Engineering Fronts 2019. Beijing: Higher Education Press, 2019, 61–62
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K Sperling, F K Hvelplund, B V Mathiesen, H Lund, D Connolly, H Wenzel, P A Ostergaard. Smart Energy Systems for coherent 100% renewable energy and transport solutions. Applied Energy, 2015, 145: 139–154
https://doi.org/10.1016/j.apenergy.2015.01.075
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C Budischak, D Sewell, H Thomson, L Mach, D E Veron, W Kempton. Cost-minimized combinations of wind power, solar power and electrochemical storage, powering the grid up to 99.9% of the time. Journal of Power Sources, 2013, 225: 60–74
https://doi.org/10.1016/j.jpowsour.2012.09.054
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S Pfenninger, A Hawkes, J Keirstead. Energy systems modeling for twenty-first century energy challenges. Renewable & Sustainable Energy Reviews, 2014, 33: 74–86
https://doi.org/10.1016/j.rser.2014.02.003
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J Noack, N Roznyatovskaya, T Herr, P Fischer. The chemistry of redox-flow batteries. Angewandte Chemie International Edition, 2014, 54(34): 9775–9808
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M Huber, D Dimkova, T Hamacher. Integration of wind and solar power in Europe: Assessment of flexibility requirements. Energy, 2014, 69: 236–246
https://doi.org/10.1016/j.energy.2014.02.109
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M Sharafi, T Y ELMekkawy. Multi-objective optimal design of hybrid renewable energy systems using PSO-simulation based approach. Renewable Energy, 2014, 68: 67–79
https://doi.org/10.1016/j.renene.2014.01.011
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D Connolly, H Lund, B V Mathiesen. Energy Europe: The technical and economic impact of one potential 100% renewable energy scenario for the European Union. Renewable & Sustainable Energy Reviews, 2016, 60: 1634–1653
https://doi.org/10.1016/j.rser.2016.02.025
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B Elliston, L MacGill, M Diesendorf. Least cost 100% renewable electricity scenarios in the Australian National Electricity Market. Energy Policy, 2013, 59: 270–282
https://doi.org/10.1016/j.enpol.2013.03.038
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H Arastoopour. The critical contribution of chemical engineering to a pathway to sustainability. Chemical Engineering Science, 2019, 203: 247–258
https://doi.org/10.1016/j.ces.2019.03.069
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D Xu, L Lv, J Ren, W Shen, S Wei, L Dong. Life cycle sustainability assessment of chemical processes: A vector-based three-dimensional algorithm coupled with AHP. Industrial & Engineering Chemistry Research, 2017, 56(39): 11216–11227
https://doi.org/10.1021/acs.iecr.7b02041
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A D Celebi, H Sharma, A V Ensinas, F Marechal. Next generation cogeneration system for industry: Combined heat and fuel plant using biomass resources. Chemical Engineering Science, 2019, 204: 59–75
https://doi.org/10.1016/j.ces.2019.04.018
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A B Koven, S S Tong, R R Farnood, C Q Jia. Alkali-thermal gasification and hydrogen generation potential of biomass. Frontiers of Chemical Science and Engineering, 2017, 11(3): 369–378
https://doi.org/10.1007/s11705-017-1662-y
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L Y Mao, Y X Li, C Zhang. Upgrading of derived pyrolysis vapors for the production of biofuels from corncobs. Frontiers of Chemical Science and Engineering, 2018, 12(1): 50–58
https://doi.org/10.1007/s11705-017-1685-4
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A T Penteado, M Kim, H R Godini, E Esche, J U Repke. Techno-economic evaluation of a biogas-based oxidative coupling of methane process for ethylene production. Frontiers of Chemical Science and Engineering, 2018, 12(4): 598–618
https://doi.org/10.1007/s11705-018-1752-5
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E Saracevic, D Woess, F Theuretzbacher, A Friedl, A Miltner. Techno-economic assessment of providing control energy reserves with a biogas plant. Frontiers of Chemical Science and Engineering, 2018, 12(4): 763–771
https://doi.org/10.1007/s11705-018-1776-x
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V Turek, B Kilkovský, Z Jegla, P Stehlík. Proposed EU legislation to force changes in sewage sludge disposal: A case study. Frontiers of Chemical Science and Engineering, 2018, 12(4): 660–669
https://doi.org/10.1007/s11705-018-1773-0
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S J Wang, Z H Ma, T Zhang, M D Bao, H J Su. Optimization and modeling of biohydrogen production by mixed bacterial cultures from raw cassava starch. Frontiers of Chemical Science and Engineering, 2017, 11(1): 100–106
https://doi.org/10.1007/s11705-017-1617-3
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S B He, J Boom, R van der Gaast, K Seshan. Hydro-pyrolysis of lignocellulosic biomass over alumina supported Platinum, Mo2C and WC catalysts. Frontiers of Chemical Science and Engineering, 2018, 12(1): 155–161
https://doi.org/10.1007/s11705-017-1655-x
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J Zhang, L Wang, Y Y Ji, F Chen, F S Xiao. Mesoporous zeolites for biofuel upgrading and glycerol conversion. Frontiers of Chemical Science and Engineering, 2018, 12(1): 132–144
https://doi.org/10.1007/s11705-017-1681-8
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R Agrawal, D S Mallapragada. Chemical engineering in a solar energy-driven sustainable future. AIChE Journal. American Institute of Chemical Engineers, 2010, 56(11): 2762–2768
https://doi.org/10.1002/aic.12435
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Y Zhang, J Xiao, Q Y Lv, S Wang. Self-supported transition metal phosphide based electrodes as high-efficient water splitting cathodes. Frontiers of Chemical Science and Engineering, 2018, 12(3): 494–508
https://doi.org/10.1007/s11705-018-1732-9
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W F Xie, Z H Li, M F Shao, M Wei. Layered double hydroxide-based core-shell nanoarrays for efficient electrochemical water splitting. Frontiers of Chemical Science and Engineering, 2018, 12(3): 537–554
https://doi.org/10.1007/s11705-018-1719-6
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Y Wang, J Zhang. Structural engineering of transition metal-based nanostructured electrocatalysts for efficient water splitting. Frontiers of Chemical Science and Engineering, 2018, 12(4): 838–854
https://doi.org/10.1007/s11705-018-1746-3
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Z J Cui, K Y Zhang, G Y Xing, Y Q Feng, S X Meng. Multi-functional 3D N-doped TiO2 microspheres used as scattering layers for dye-sensitized solar cells. Frontiers of Chemical Science and Engineering, 2017, 11(3): 395–404
https://doi.org/10.1007/s11705-017-1643-1
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W J Ding, A Bonk, T Bauer. Corrosion behavior of metallic alloys in molten chloride salts for thermal energy storage in concentrated solar power plants: A review. Frontiers of Chemical Science and Engineering, 2018, 12(3): 564–576
https://doi.org/10.1007/s11705-018-1720-0
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M H Uddin, N Ozalp, J Heylen, C Ophoff. A new approach for fuel injection into a solar receiver/reactor: Numerical and experimental investigation. Frontiers of Chemical Science and Engineering, 2018, 12(4): 683–696
https://doi.org/10.1007/s11705-018-1782-z
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T M Gür. Review of electrical energy storage technologies, materials and systems: Challenges and prospects for large-scale grid storage. Energy & Environmental Science, 2018, 11(10): 2696–2767
https://doi.org/10.1039/C8EE01419A
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H Er-rbib, N Kezibri, C Bouallou. Performance assessment of a power-to-gas process based on reversible solid oxide cell. Frontiers of Chemical Science and Engineering, 2018, 12(4): 697–707
https://doi.org/10.1007/s11705-018-1774-z
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T Zhang, E Paillard. Recent advances toward high voltage, EC-free electrolytes for graphite-based Li-ion battery. Frontiers of Chemical Science and Engineering, 2018, 12(3): 577–591
https://doi.org/10.1007/s11705-018-1758-z
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H P Zhao, L Liu, Y G Fang, R Vellacheri, Y Lei. Nickel nanopore arrays as promising current collectors for constructing solid-state supercapacitors with ultrahigh rate performance. Frontiers of Chemical Science and Engineering, 2018, 12(3): 339–345
https://doi.org/10.1007/s11705-018-1699-6
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C Zhang, C B Lu, S Bi, Y Hou, F Zhang, M Cai, Y F He, S Paasch, X L Feng, E Brunner, X D Zhuang. S-enriched porous polymer derived N-doped porous carbons for electrochemical energy storage and conversion. Frontiers of Chemical Science and Engineering, 2018, 12(3): 346–357
https://doi.org/10.1007/s11705-018-1727-6
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H P Zhao, L Liu, Y Lei. A mini review: Functional nanostructuring with perfectly-ordered anodic aluminum oxide template for energy conversion and storage. Frontiers of Chemical Science and Engineering, 2018, 12(3): 481–493
https://doi.org/10.1007/s11705-018-1707-x
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